peer reviewedThis paper proposes a novel control scheme for frequency support among asynchronous AC areas through HVDC grids. It is based on local controllers, each acting on a voltage source converter, using locally available measurements only, and supporting frequency of the adjacent AC area after a significant disturbance. The controller is combined with the existing DC voltage droop technique and is inspired of Model Predictive Control, taking into account various constraints. The coordination of the proposed control scheme with the existing secondary frequency control of an AC area is also discussed. Examples obtained from a test system with a five-terminal DC network connecting two asynchronous areas demonstrate the effectiveness of t...
International audience—MTDC systems are required to be reliable, and in certain cases, should partic...
This paper proposes a combined voltage stability and frequency damping controller using Voltage Sour...
Abstract—The use of multi-terminal HVDC grids is a promis-ing option to tackle the coming challenges...
This paper proposes a novel control scheme for provision of frequency support among asynchronous AC ...
Aiming at the problem of frequency stability of the asynchronous AC/DC hybrid power grid, a predicti...
In this thesis, control of future AC/DC systems for improved system dynamic performance is studied....
peer reviewedThis paper addresses the problem of frequency control for non-synchronous AC areas conn...
We consider frequency control in power systems made of several non-synchronous AC areas connected by...
A high-voltage direct-current (HVDC) system should provide frequency support to all ac grids connect...
International audienceMulti-terminal DC systems must provide a high level of reliability and may hav...
High Voltage Direct Current (HVDC) transmission has become increasingly popular in the recent years,...
Renewable energy resources are being integrated into power systems around the world and replacing co...
Abstract—This paper presents a decentralized controller for sharing primary AC frequency control res...
We consider a power system composed of several non-synchronous AC areas connected by a multi-termina...
This paper investigates the use of multi-terminal HVDC systems to provide primary frequency support ...
International audience—MTDC systems are required to be reliable, and in certain cases, should partic...
This paper proposes a combined voltage stability and frequency damping controller using Voltage Sour...
Abstract—The use of multi-terminal HVDC grids is a promis-ing option to tackle the coming challenges...
This paper proposes a novel control scheme for provision of frequency support among asynchronous AC ...
Aiming at the problem of frequency stability of the asynchronous AC/DC hybrid power grid, a predicti...
In this thesis, control of future AC/DC systems for improved system dynamic performance is studied....
peer reviewedThis paper addresses the problem of frequency control for non-synchronous AC areas conn...
We consider frequency control in power systems made of several non-synchronous AC areas connected by...
A high-voltage direct-current (HVDC) system should provide frequency support to all ac grids connect...
International audienceMulti-terminal DC systems must provide a high level of reliability and may hav...
High Voltage Direct Current (HVDC) transmission has become increasingly popular in the recent years,...
Renewable energy resources are being integrated into power systems around the world and replacing co...
Abstract—This paper presents a decentralized controller for sharing primary AC frequency control res...
We consider a power system composed of several non-synchronous AC areas connected by a multi-termina...
This paper investigates the use of multi-terminal HVDC systems to provide primary frequency support ...
International audience—MTDC systems are required to be reliable, and in certain cases, should partic...
This paper proposes a combined voltage stability and frequency damping controller using Voltage Sour...
Abstract—The use of multi-terminal HVDC grids is a promis-ing option to tackle the coming challenges...